Herbicide/safener combination

ABSTRACT

A composition comprising 
     (A) one or more compounds of the formula (I), their N-oxides or their salts, 
     
       
         
         
             
             
         
       
         
         
           
             in which 
             R 1  is cyclopropyl, 4-Br-phenyl or 4-Cl-phenyl; 
             X is chlorine or bromine; and 
             R 2  is hydrogen, C 1 -C 14 -alkyl, C 2 -C 14 -alkoxyalkyl, C 3 -C 14 -alkoxyalkoxyalkyl, C 2 -C 14 -hydroxyalkyl or benzyl;
 
and
 
(B) one or more safeners is described.

The present invention relates to agrochemically effective herbicide/safener combinations, to processes for their preparation and to their use for controlling harmful plants.

It is known from various documents that certain pyrimidine derivatives have herbicidal properties. For example, WO 2005/063721 A, WO 2007/082076 A and US 2007 0197391 describe pyrimidine derivatives which control a broad spectrum of weeds. However, these active ingredients are in part not fully compatible with a number of important crop plants, such as, for example, various cereal species, corn or rice. Consequently, in some crops, they cannot be used in a manner which ensures the desired broad herbicidal activity against harmful plants.

EP-A 0 912 089, EP-A 1 019 368 and US 2007 0010399 describe safeners from the group of acylsulfonamides and mixtures of these safeners with a very wide variety of herbicides, although no herbicides of the formula (I) are disclosed as mixing partners.

WO 2007/120706 A describes mixtures of the pyrimidine derivatives of the formula (I) and certain safeners. As a result of the combination with safeners, the compatibility with crop plants is said to be increased. However, the compatibility for these mixtures is unsatisfactory in some crop plants.

It was therefore an object of the present invention to find herbicidal compositions in which the selectivity of the herbicides known from WO 2007/120706 in respect of important crop plants is increased. Surprisingly, this object is achieved by the herbicide/safener combinations according to the invention.

Accordingly, the present invention provides a composition comprising

(A) one or more compounds of the formula (I), their N-oxides or their salts,

-   -   in which     -   R¹ is cyclopropyl, 4-Br-phenyl or 4-Cl-phenyl;     -   X is chlorine or bromine; and     -   R² is hydrogen, C₁-C₁₄-alkyl, C₂-C₁₄-alkoxyalkyl,         C₃-C₁₄-alkoxyalkoxyalkyl, C₂-C₁₄-hydroxyalkyl or benzyl;         and         (B) one or more safeners.

The herbicide/safener combinations according to the invention can comprise additional further components, for example crop protection composition active ingredients of a different type and/or formulation auxiliaries and/or additives customary in crop protection, or can be used together with these.

The herbicides (A) and the safeners (B) can be applied in a known manner, for example together (for example as a coformulation or as a tank mix) or else at different times (splitting), for example to the plants, plant parts, plant seeds or the area on which the plants grow. It is possible, for example, to apply the individual active ingredients or the herbicide/safener combination in several portions (sequential application), for example pre-emergence applications followed by post-emergence applications, or early post-emergence applications followed by medium or late post-emergence applications. Preference is given here to the joint or almost simultaneous application of the active ingredients of the respective combination. It is also possible to use the individual active ingredients or the herbicide/safener combination for treating seed material.

Compound of the Formula (I)

The specified formula (I) encompasses all stereoisomers and mixtures thereof, in particular also racemic mixtures, and—if enantiomers are possible—both enantiomers and in particular the biologically effective enantiomer in each case.

Preferred herbicides (A) are compounds of the formula (I) and salts thereof, in which the radical

-   R² is hydrogen; C₁-C₈-alkyl; C₂-C₈-alkoxyalkyl;     C₃-C₈-alkoxyalkoxyalkyl, or C₂-C₈-hydroxyalkyl.

Particularly preferred herbicides (A) are compounds of the formula (I) and salts thereof, in which the radical

-   R² is hydrogen or C₁-C₂-alkyl.

Likewise further preferred herbicides (A) are compounds of the formula (I) and salts thereof, in which the radical

-   R² is C₅-C₈-alkyl, C₅-C₈-alkoxyalkyl, C₅-C₈-alkoxyalkoxyalkyl or     C₅-C₈-hydroxyalkyl.

Particularly preferred herbicides (A) are compounds of the formula (I) and their salts which are selected from the group consisting of

-   6-amino-5-chloro-2-cyclopropyl-4-pyrimidinecarboxylic acid; -   methyl 6-amino-5-chloro-2-cyclopropyl-4-pyrimidinecarboxylate; -   ethyl 6-amino-5-chloro-2-cyclopropyl-4-pyrimidinecarboxylate; -   6-amino-5-bromo-2-cyclopropyl-4-pyrimidinecarboxylic acid; -   methyl 6-amino-5-bromo-2-cyclopropyl-4-pyrimidinecarboxylate; -   ethyl 6-amino-5-bromo-2-cyclopropyl-4-pyrimidinecarboxylate; -   6-amino-5-chloro-2-(4-chlorophenyl)-4-pyrimidinecarboxylic acid; -   methyl 6-amino-5-chloro-2-(4-chlorophenyl)-4-pyrimidinecarboxylate; -   ethyl 6-amino-5-chloro-2-(4-chlorophenyl)-4-pyrimidinecarboxylate; -   phenylmethyl 6-amino-5-bromo-2-cyclopropyl-4-pyrimidinecarboxylate; -   6-amino-5-bromo-2-cyclopropyl-4-pyrimidinecarboxylic acid sodium     salt; -   phenylmethyl 6-amino-5-chloro-2-cyclopropyl-4-pyrimidinecarboxylate; -   6-amino-5-chloro-2-cyclopropyl-4-pyrimidinecarboxylic acid sodium     salt; -   ethyl 6-amino-2-(4-bromophenyl)-5-chloro-4-pyrimidinecarboxylate; -   methyl 6-amino-2-(4-bromophenyl)-5-chloro-4-pyrimidinecarboxylate; -   6-amino-2-(4-bromophenyl)-5-chloro-4-pyrimidinecarboxylic acid; -   1-methylethyl     6-amino-5-chloro-2-cyclopropyl-4-pyrimidinecarboxylate; -   n-butyl 6-amino-5-chloro-2-cyclopropyl-4-pyrimidinecarboxylate; -   3-hydroxypropyl     6-amino-5-chloro-2-cyclopropyl-4-pyrimidinecarboxylate; -   n-propyl 6-amino-5-chloro-2-cyclopropyl-4-pyrimidinecarboxylate; -   1-methylheptyl     6-amino-5-chloro-2-cyclopropyl-4-pyrimidinecarboxylate; -   2-(2-methoxyethoxy)ethyl     6-amino-5-chloro-2-cyclopropyl-4-pyrimidinecarboxylate; -   n-octyl 6-amino-5-chloro-2-cyclopropyl-4-pyrimidinecarboxylate; -   2-butoxyethyl     6-amino-5-chloro-2-cyclopropyl-4-pyrimidinecarboxylate; -   2-ethyl hexyl     6-amino-5-chloro-2-cyclopropyl-4-pyrimidinecarboxylate; -   potassium salt of     6-amino-5-chloro-2-cyclopropyl-4-pyrimidinecarboxylic acid; and -   2-butoxy-1-methylethyl     6-amino-5-chloro-2-cyclopropyl-4-pyrimidinecarboxylate.

Within the context of the present invention, it is particularly preferred if the herbicide of the formula (I) is selected from the group of the following compounds (I-1) to (I-3), (I-109), (I-163) and (I-164):

Compound of the Formula (I-1):

Compound of the Formula (I-2):

Compound of the Formula (I-3):

Compound of the Formula (I-109):

Compound of the Formula (I-163):

Compound of the Formula (I-164):

Yet more preferred herbicides (A) are compounds of the formula (I) and their salts which are selected from the group consisting of

-   6-amino-5-chloro-2-cyclopropyl-4-pyrimidinecarboxylic acid (I-1);     and -   methyl 6-amino-5-chloro-2-cyclopropyl-4-pyrimidinecarboxylate (I-2).

The compounds of the formula (I) can also form salts through adduct formation of a suitable inorganic or organic acid, such as, for example, HCl, HBr, H₂SO₄ or HNO₃, but also oxalic acid or sulfonic acids, onto a basic group, such as, for example, amino. Suitable substituents which are present in deprotonated form, such as, for example, carboxylic acids, can form internal salts with groups that for their part are protonatable, such as amino groups. Salts can likewise be formed by, in the case of suitable substituents, such as, for example, carboxylic acids, replacing the hydrogen by a cation suitable for agriculture. These salts are, for example, metal salts, in particular alkali metal salts or alkaline earth metal salts, in particular sodium and potassium salts, or else ammonium salts, salts with organic amines or quaternary ammonium salts with cations of the formula [NRR′R″R′″]⁺, in which R to R′″, in each case independently of one another, are an organic radical, in particular alkyl, aryl, aralkyl or alkylaryl.

In particular the compounds of the formula (I) can also include N-oxides. Corresponding pyridine N-oxides are accessible via an oxidation of the corresponding pyridines. Suitable oxidation methods are described, for example, in Houben-Weyl, Methoden der organischen Chemie [Methods in organic chemistry], expanded and subsequent volumes to the 4th edition, volume E 7b, p. 565 f.

Unless specifically defined otherwise, the following definitions apply in general for the radicals of the formula (I).

In formula (I), the radicals alkyl, alkoxyalkyl, hydroxyalkyl and alkoxyalkoxyalkyl may in each case be straight-chain or branched.

Within the context of the present invention, the term “alkyl” is understood in particular as meaning the radicals methyl; ethyl; n-propyl; isopropyl; n-butyl; sec-butyl; tert-butyl; or the various isomers of pentyl or hexyl.

Within the context of the present invention, the term “alkoxyalkyl” is understood as meaning alkyl provided with an alkoxy substituent. Examples of the radical “alkoxyalkyl” include CH₃OCH₂, CH₃OCH₂CH₂, CH₃CH₂OCH₂, CH₃CH₂CH₂CH₂OCH₂, CH₃CH₂OCH₂CH₂, CH₃CH₂CH₂CH₂OCH₂CH₂ or CH₃CH₂CH₂CH₂OCH₂CHMe.

Within the context of the present invention, the term “alkoxyalkoxy” is understood as meaning alkoxy provided with an alkoxy substituent.

Within the context of the present invention, the term “alkoxyalkoxyalkyl” is understood as meaning a radical in which an alkoxyalkoxy substituent is bonded to an alkyl radical. Examples of “alkoxyalkoxyalkyl” include CH₃OCH₂OCH₂, CH₃OCH₂OCH₂CH₂, CH₃CH₂OCH₃OCH₂ and CH₃OCH₃CH₂OCH₂CH₂.

Within the context of the present invention, the term “hydroxyalkyl” is understood as meaning alkyl provided with a hydroxy substituent. Examples of “hydroxyalkyl” include HOCH₂CH₂, HOCH₂CH₂CH₂ and HOCH₂CH₂CH₂CH₂.

For radicals with carbon atoms, preference is in principle given to those having 1 to 6 carbon atoms, preferably 1 to 4 carbon atoms, in particular 1 or 2 carbon atoms.

The present invention also provides mixtures comprising stereoisomers which are encompassed by formula (I) or by the formulae of component B (safener). Such compounds of the formula (I) or of the formulae of component B (safener) comprise, for example, one or more asymmetrically substituted carbon atoms or sulfoxides. The possible stereoisomers defined by their specific spatial form, such as enantiomers and diastereomers, are all encompassed by the formula (I) or by the formulae of component B (safener) and can be obtained by customary methods from mixtures of the stereoisomers or else be prepared by stereoselective reactions in combination with the use of stereochemically pure starting substances or auxiliaries.

Examples of compounds used as herbicide (A) are specified in tables A below, in which the following abbreviations are used:

Et: ethyl i-Pr: isopropyl

TABLE A.1 Specific examples of the compounds of the formula (I) Compound R¹ X R² I-1 Cyclopropyl Cl H I-2 Cyclopropyl Cl CH₃ I-3 Cyclopropyl Cl CH₃CH₂ I-4 Cyclopropyl Cl CH₃CH₂CH₂ I-5 Cyclopropyl Cl CH₃CHCH₃ I-6 Cyclopropyl Cl CH₃CH₂CH₂CH₂ I-7 Cyclopropyl Cl (CH₃)₂CHCH₂ I-8 Cyclopropyl Cl (H₃C)₃C I-9 Cyclopropyl Cl CH₃(CH₂)₅CH(CH₃) I-10 Cyclopropyl Cl CH₃(CH₂)₆CH₂ I-11 Cyclopropyl Cl CH₃(CH₂)₃CH(CH₂CH₃)CH₂ I-12 Cyclopropyl Cl CH₃OCH₂ I-13 Cyclopropyl Cl CH₃OCH₂CH₂ I-14 Cyclopropyl Cl CH₃CH₂OCH₂ I-15 Cyclopropyl Cl CH₃CH₂CH₂OCH₂ I-16 Cyclopropyl Cl CH₃CH₂CH₂CH₂OCH₂ I-17 Cyclopropyl Cl CH₃CH₂OCH₂CH₂ I-18 Cyclopropyl Cl CH₃CH₂CH₂CH₂OCH₂CH₂ I-19 Cyclopropyl Cl CH₃CH₂CH₂CH₂OCH(CH₃) I-20 Cyclopropyl Cl CH₃OCH₂OCH₂ I-21 Cyclopropyl Cl CH₃OCH₂OCH₂CH₂ I-22 Cyclopropyl Cl CH₃CH₂OCH₂OCH₂ I-23 Cyclopropyl Cl CH₃OCH₂CH₂OCH₂CH₂ I-24 Cyclopropyl Cl HOCH₂CH₂ I-25 Cyclopropyl Cl HOCH₂CH₂CH₂ I-26 Cyclopropyl Cl HOCH₂CH₂CH₂CH₂ I-27 Cyclopropyl Cl Benzyl I-28 Cyclopropyl Br H I-29 Cyclopropyl Br CH₃ I-30 Cyclopropyl Br CH₃CH₂ I-31 Cyclopropyl Br CH₃CH₂CH₂ I-32 Cyclopropyl Br CH₃CHCH₃ I-33 Cyclopropyl Br CH₃CH₂CH₂CH₂ I-34 Cyclopropyl Br (CH₃)₂CHCH₂ I-35 Cyclopropyl Br (H₃C)₃C I-36 Cyclopropyl Br CH₃OCH₂ I-37 Cyclopropyl Br CH₃(CH₂)₅CH(CH₃) I-38 Cyclopropyl Br CH₃(CH₂)₆CH₂ I-39 Cyclopropyl Br CH₃(CH₂)₃CH(CH₂CH₃)CH₂ I-40 Cyclopropyl Br CH₃OCH₂CH₂ I-41 Cyclopropyl Br CH₃CH₂OCH₂ I-42 Cyclopropyl Br CH₃CH₂CH₂OCH₂ I-43 Cyclopropyl Br CH₃CH₂CH₂CH₂OCH₂ I-44 Cyclopropyl Br CH₃CH₂OCH₂CH₂ I-45 Cyclopropyl Br CH₃CH₂CH₂CH₂OCH₂CH₂ I-46 Cyclopropyl Br CH₃CH₂CH₂CH₂OCH(CH₃) I-47 Cyclopropyl Br CH₃OCH₂OCH₂ I-48 Cyclopropyl Br CH₃OCH₂OCH₂CH₂ I-49 Cyclopropyl Br CH₃CH₂OCH₂OCH₂ I-50 Cyclopropyl Br CH₃OCH₂CH₂OCH₂CH₂ I-51 Cyclopropyl Br HOCH₂CH₂ I-52 Cyclopropyl Br HOCH₂CH₂CH₂ I-53 Cyclopropyl Br HOCH₂CH₂CH₂CH₂ I-54 Cyclopropyl Br Benzyl I-55 4-Br-Phenyl Cl H I-56 4-Br-Phenyl Cl CH₃ I-57 4-Br-Phenyl Cl CH₃CH₂ I-58 4-Br-Phenyl Cl CH₃CH₂CH₂ I-59 4-Br-Phenyl Cl CH₃CHCH₃ I-60 4-Br-Phenyl Cl CH₃CH₂CH₂CH₂ I-61 4-Br-Phenyl Cl (CH₃)₂CHCH₂ I-62 4-Br-Phenyl Cl (H₃C)₃C I-63 4-Br-Phenyl Cl CH₃(CH₂)₅CH(CH₃) I-64 4-Br-Phenyl Cl CH₃(CH₂)₆CH₂ I-65 4-Br-Phenyl Cl CH₃(CH₂)₃CH(CH₂CH₃)CH₂ I-66 4-Br-Phenyl Cl CH₃OCH₂ I-67 4-Br-Phenyl Cl CH₃OCH₂CH₂ I-68 4-Br-Phenyl Cl CH₃CH₂OCH₂ I-69 4-Br-Phenyl Cl CH₃CH₂CH₂OCH₂ I-70 4-Br-Phenyl Cl CH₃CH₂CH₂CH₂OCH₂ I-71 4-Br-Phenyl Cl CH₃CH₂OCH₂CH₂ I-72 4-Br-Phenyl Cl CH₃CH₂CH₂CH₂OCH₂CH₂ I-73 4-Br-Phenyl Cl CH₃CH₂CH₂CH₂OCH(CH₃) I-74 4-Br-Phenyl Cl CH₃OCH₂OCH₂ I-75 4-Br-Phenyl Cl CH₃OCH₂OCH₂CH₂ I-76 4-Br-Phenyl Cl CH₃CH₂OCH₂OCH₂ I-77 4-Br-Phenyl Cl CH₃OCH₂CH₂OCH₂CH₂ I-78 4-Br-Phenyl Cl HOCH₂CH₂ I-79 4-Br-Phenyl Cl HOCH₂CH₂CH₂ I-80 4-Br-Phenyl Cl HOCH₂CH₂CH₂CH₂ I-81 4-Br-Phenyl Cl Benzyl I-82 4-Br-Phenyl Br H I-83 4-Br-Phenyl Br CH₃ I-84 4-Br-Phenyl Br CH₃CH₂ I-85 4-Br-Phenyl Br CH₃CH₂CH₂ I-86 4-Br-Phenyl Br CH₃CHCH₃ I-87 4-Br-Phenyl Br CH₃CH₂CH₂CH₂ I-88 4-Br-Phenyl Br (CH₃)₂CHCH₂ I-89 4-Br-Phenyl Br (H₃C)₃C I-90 4-Br-Phenyl Br CH₃(CH₂)₅CH(CH₃) I-91 4-Br-Phenyl Br CH₃(CH₂)₆CH₂ I-92 4-Br-Phenyl Br CH₃(CH₂)₃CH(CH₂CH₃)CH₂ I-93 4-Br-Phenyl Br CH₃OCH₂ I-94 4-Br-Phenyl Br CH₃OCH₂CH₂ I-95 4-Br-Phenyl Br CH₃CH₂OCH₂ I-96 4-Br-Phenyl Br CH₃CH₂CH₂OCH₂ I-97 4-Br-Phenyl Br CH₃CH₂CH₂CH₂OCH₂ I-98 4-Br-Phenyl Br CH₃CH₂OCH₂CH₂ I-99 4-Br-Phenyl Br CH₃CH₂CH₂CH₂OCH₂CH₂ I-100 4-Br-Phenyl Br CH₃CH₂CH₂CH₂OCH(CH₃) I-101 4-Br-Phenyl Br CH₃OCH₂OCH₂ I-102 4-Br-Phenyl Br CH₃OCH₂OCH₂CH₂ I-103 4-Br-Phenyl Br CH₃CH₂OCH₂OCH₂ I-104 4-Br-Phenyl Br CH₃OCH₂CH₂OCH₂CH₂ I-105 4-Br-Phenyl Br HOCH₂CH₂ I-106 4-Br-Phenyl Br HOCH₂CH₂CH₂ I-107 4-Br-Phenyl Br HOCH₂CH₂CH₂CH₂ I-108 4-Br-Phenyl Br Benzyl I-109 4-Cl-Phenyl Cl H I-110 4-Cl-Phenyl Cl CH₃ I-111 4-Cl-Phenyl Cl CH₃CH₂ I-112 4-Cl-Phenyl Cl CH₃CH₂CH₂ I-113 4-Cl-Phenyl Cl CH₃CHCH₃ I-114 4-Cl-Phenyl Cl CH₃CH₂CH₂CH₂ I-115 4-Cl-Phenyl Cl (CH₃)₂CHCH₂ I-116 4-Cl-Phenyl Cl (H₃C)₃C I-117 4-Cl-Phenyl Cl CH₃(CH₂)₅CH(CH₃) I-118 4-Cl-Phenyl Cl CH₃(CH₂)₆CH₂ I-119 4-Cl-Phenyl Cl CH₃(CH₂)₃CH(CH₂CH₃)CH₂ I-120 4-Cl-Phenyl Cl CH₃OCH₂ I-121 4-Cl-Phenyl Cl CH₃OCH₂CH₂ I-122 4-Cl-Phenyl Cl CH₃CH₂OCH₂ I-123 4-Cl-Phenyl Cl CH₃CH₂CH₂OCH₂ I-124 4-Cl-Phenyl Cl CH₃CH₂CH₂CH₂OCH₂ I-125 4-Cl-Phenyl Cl CH₃CH₂OCH₂CH₂ I-126 4-Cl-Phenyl Cl CH₃CH₂CH₂CH₂OCH₂CH₂ I-127 4-Cl-Phenyl Cl CH₃CH₂CH₂CH₂OCH(CH₃) I-128 4-Cl-Phenyl Cl CH₃OCH₂OCH₂ I-129 4-Cl-Phenyl Cl CH₃OCH₂OCH₂CH₂ I-130 4-Cl-Phenyl Cl CH₃CH₂OCH₂OCH₂ I-131 4-Cl-Phenyl Cl CH₃OCH₂CH₂OCH₂CH₂ I-132 4-Cl-Phenyl Cl HOCH₂CH₂ I-133 4-Cl-Phenyl Cl HOCH₂CH₂CH₂ I-134 4-Cl-Phenyl Cl HOCH₂CH₂CH₂CH₂ I-135 4-Cl-Phenyl Cl Benzyl I-136 4-Cl-Phenyl Br H I-137 4-Cl-Phenyl Br CH₃ I-138 4-Cl-Phenyl Br CH₃CH₂ I-139 4-Cl-Phenyl Br CH₃CH₂CH₂ I-140 4-Cl-Phenyl Br CH₃CHCH₃ I-141 4-Cl-Phenyl Br CH₃CH₂CH₂CH₂ I-142 4-Cl-Phenyl Br (CH₃)₂CHCH₂ I-143 4-Cl-Phenyl Br (H₃C)₃C I-144 4-Cl-Phenyl Br CH₃(CH₂)₅CH(CH₃) I-145 4-Cl-Phenyl Br CH₃(CH₂)₆CH₂ I-146 4-Cl-Phenyl Br CH₃(CH₂)₃CH(CH₂CH₃)CH₂ I-147 4-Cl-Phenyl Br CH₃OCH₂ I-148 4-Cl-Phenyl Br CH₃OCH₂CH₂ I-149 4-Cl-Phenyl Br CH₃CH₂OCH₂ I-150 4-Cl-Phenyl Br CH₃CH₂CH₂OCH₂ I-151 4-Cl-Phenyl Br CH₃CH₂CH₂CH₂OCH₂ I-152 4-Cl-Phenyl Br CH₃CH₂OCH₂CH₂ I-153 4-Cl-Phenyl Br CH₃CH₂CH₂CH₂OCH₂CH₂ I-154 4-Cl-Phenyl Br CH₃CH₂CH₂CH₂OCH(CH₃) I-155 4-Cl-Phenyl Br CH₃OCH₂OCH₂ I-156 4-Cl-Phenyl Br CH₃OCH₂OCH₂CH₂ I-157 4-Cl-Phenyl Br CH₃CH₂OCH₂OCH₂ I-158 4-Cl-Phenyl Br CH₃OCH₂CH₂OCH₂CH₂ I-159 4-Cl-Phenyl Br HOCH₂CH₂ I-160 4-Cl-Phenyl Br HOCH₂CH₂CH₂ I-161 4-Cl-Phenyl Br HOCH₂CH₂CH₂CH₂ I-162 4-Cl-Phenyl Br Benzyl

TABLE A.2 Specific examples of the compounds of the formula (I) (salts) (I) (salts)

Compound R¹ X M⁺ I-163 Cyclopropyl Cl K⁺ I-164 Cyclopropyl Cl Na⁺ I-165 Cyclopropyl Cl H₃N⁺(CH₃) I-166 Cyclopropyl Cl H₃(i-Pr)N⁺ I-167 Cyclopropyl Cl H(Et)₃N⁺ I-168 Cyclopropyl Cl (CH₃)₄N⁺ I-169 Cyclopropyl Br K⁺ I-170 Cyclopropyl Br Na⁺ I-171 Cyclopropyl Br H₃N⁺(CH₃) I-172 Cyclopropyl Br H₃(i-Pr)N⁺ I-173 Cyclopropyl Br H(Et)₃N⁺ I-174 Cyclopropyl Br (CH₃)₄N⁺ I-175 4-Br-Phenyl Cl K⁺ I-176 4-Br-Phenyl Cl Na⁺ I-177 4-Br-Phenyl Cl H₃N⁺(CH₃) I-178 4-Br-Phenyl Cl H₃(i-Pr)N⁺ I-179 4-Br-Phenyl Cl H(Et)₃N⁺ I-180 4-Br-Phenyl Cl (CH₃)₄N⁺ I-181 4-Br-Phenyl Br K⁺ I-182 4-Br-Phenyl Br Na⁺ I-183 4-Br-Phenyl Br H₃N⁺(CH₃) I-184 4-Br-Phenyl Br H₃(i-Pr)N⁺ I-185 4-Br-Phenyl Br H(Et)₃N⁺ I-186 4-Br-Phenyl Br (CH₃)₄N⁺ I-187 4-Cl-Phenyl Cl K⁺ I-188 4-Cl-Phenyl Cl Na⁺ I-189 4-Cl-Phenyl Cl H₃N⁺(CH₃) I-190 4-Cl-Phenyl Cl H₃(i-Pr)N⁺ I-191 4-Cl-Phenyl Cl H(Et)₃N⁺ I-192 4-Cl-Phenyl Cl (CH₃)₄N⁺ I-193 4-Cl-Phenyl Br K⁺ I-194 4-Cl-Phenyl Br Na⁺ I-195 4-Cl-Phenyl Br H₃N⁺(CH₃) I-196 4-Cl-Phenyl Br H₃(i-Pr)N⁺ I-197 4-Cl-Phenyl Br H(Et)₃N⁺ I-198 4-Cl-Phenyl Br (CH₃)₄N⁺

The application rate of the herbicides of the formula (I) (A) can vary within a wide range with the external conditions such as temperature, humidity, the type of herbicide used, for example between 0.001 g and 2000 g of a.i./ha (a.i./ha means hereinbelow “active substance per hectare”=based on 100% pure active ingredient).

In the case of applications at application rates of from 0.01 g to 1000 g of a.i./ha of the herbicides of the formula (I) (A), in the pre-emergence and post-emergence method, a relatively broad spectrum of harmful plants is controlled, e.g. annual and perennial mono- and dicotyledonous weeds, and also of undesired crop plants. For the combinations according to the invention, the application rates are generally lower, e.g. in the range from 0.1 g to 800 g of a.i./ha, preferably 1 g to 500 g of a.i./ha, particularly preferably 10 g to 400 g of a.i./ha.

The herbicides of the formula (I) (A) are suitable for controlling harmful plants, e.g. in plant crops, for example in economically important arable crops, e.g. monocotyledonous arable crops such as cereals (e.g. wheat, barley, rye, oats), rice, corn, millet, or dicotyledonous arable crops such as sugar beet, rapeseed, cotton, sunflowers and leguminous plants, for example of the genera Glycine (for example Glycine max. (soybean), such as non-transgenic Glycine max. (e.g. conventional cultivars such as STS cultivars) or transgenic Glycine max. (e.g. RR-soybean or LL-soybean) and hybrids thereof), Phaseolus, Pisum, Vicia and Arachis, or vegetable crops from various botanical groups, such as potato, leek, cabbage, carrot, tomato, onion, and also permanent crops and plantation crops such as pip and stone fruit, berry fruit, grapevine, Hevea, bananas, sugarcane, coffee, tea, citrus fruits, nut plantations, lawns, palm crops and forest plantations. For the application of the herbicide/safener combinations (A)+(B) according to the invention, these crops are likewise preferred, particular preference being given to the use in cereals (e.g. wheat, barley, rye, oats), rice, corn, millet, sugar beet, sugarcane, sunflowers, rapeseed and cotton. The herbicide/safener combinations (A)+(B) can also be used in tolerant and nontolerant mutant crops and tolerant and nontolerant transgenic crops, preferably of corn, rice, cereals, rapeseed and soybean, e.g. those which are resistant to imidazolinone herbicides, atrazine, glufosinates or glyphosates.

The compounds of the formula (I) are known from WO 2007/120706 A1 and can be obtained by the processes described therein.

Safener (B):

The safeners present as component (B) are understood as meaning compounds which are suitable for reducing phytotoxic effects of crop protection composition active ingredients such as herbicides on crop plants.

Within the context of the present invention, the safener compounds are selected from the following groups:

-   S1) compounds from the group of the following heterocyclic     carboxylic acid derivatives: -   S1a) derivatives of dichlorophenylpyrazolemonocarboxylic acid (S1a),     preferably compounds such as ethyl     1-(2,4-dichlorophenyl)-5-methylpyrazole-3-carboxylate (S-1), ethyl     1-(2,4-dichlorophenyl)-5-isopropylpyrazole-3-carboxylate (S-2),     ethyl     1-(2,4-dichlorophenyl)-5-(1,1-dimethylethyl)pyrazole-3-carboxylate     (S-3) and related compounds, as described in EP-A-333 131 and     EP-A-269 806; -   S1b) derivatives of 1,5-diphenylpyrazole-3-carboxylic acid (S1b),     preferably compounds such as ethyl     1-(2,4-dichlorophenyl)-5-phenylpyrazole-3-carboxylate (S-4), methyl     1-(2-chlorophenyl)-5-phenylpyrazole-3-carboxylate (S-5) and related     compounds, as described, for example, in EP-A-268554; -   S2) compounds from the group of the following 8-quinolinyloxy     derivatives (S2): -   S2a) compounds of the (5-chloro-8-quinolinoxy)malonic acid type     (S2a), preferably compounds such as diethyl     (5-chloro-8-quinolinoxy)malonate (S-6), diallyl     (5-chloro-8-quinolinoxy)malonate (S-7), methyl ethyl     (5-chloro-8-quinolinoxy)malonate (S-8) and related compounds, as     described in EP-A-0 582 198; -   S3) the following active ingredients of the dichloroacetamide type     (S3), which are often used as pre-emergence safeners (soil-active     safeners):     -   “R-29148” (3-dichloroacetyl-2,2,5-trimethyl-1,3-oxazolidine)         from Stauffer (S-9),     -   “R-28725” (3-dichloroacetyl-2,2-dimethyl-1,3-oxazolidine) from         Stauffer (S-10),     -   “PPG-1292”         (N-allyl-N-[(1,3-dioxolan-2-yl)methyl]dichloroacetamide) from         PPG Industries (S-11),     -   “DKA-24”         (N-allyl-N—[(allylaminocarbonyl)methyl]dichloroacetamide) from         Sagro-Chem (S-12),     -   “AD-67” or “MON 4660”         (3-dichloroacetyl-1-oxa-3-azaspiro[4,5]decane) from Nitrokemia         or Monsanto (S-13),     -   “TI-35” (1-dichloroacetylazepane) from TRI-Chemical RT (S-14),     -   “diclonon” (dicyclonone) (synonym: “BAS145138” or “LAB145138”)         (RS)-1-dichloroacetyl-3,3,8a-trimethylperhydropyrrolo[1,2-a]pyrimidin-6-one         from BASF (S-15); -   S4) compounds from the class of the acylsulfonamides (S4): -   S4a) N-acylsulfonamides of the formula (S4a) and their salts, as     described in WO 97/45016,

-   -   in which     -   R_(A) ¹ is (C₁-C₆)-alkyl, (C₃-C₆)-cycloalkyl, where the 2         last-mentioned radicals are substituted by the A substituents         from the group consisting of halogen, (C₁-C₄)-alkoxy,         (C₁-C₆)-haloalkoxy and (C₁-C₄)-alkylthio and, in the case of         cyclic radicals, also by (C₁-C₄)-alkyl and (C₁-C₄)-haloalkyl;     -   R_(A) ² is halogen, (C₁-C₄)-alkyl, (C₁-C₄)-alkoxy, CF₃;     -   mA is 1 or 2;     -   vA is 0, 1, 2 or 3;

-   S4b) compounds of the 4-(benzoylsulfamoyl)benzamide type of the     formula (S4b) and salts thereof, as described in WO 99/16744,

-   -   in which     -   R_(B) ¹, R_(B) ² independently of one another are hydrogen,         (C₁-C₆)-alkyl, (C₃-C₆)-cycloalkyl, (C₃-C₆)-alkenyl,         (C₃-C₆)-alkynyl,     -   R_(B) ³ is halogen, (C₁-C₄)-alkyl, (C₁-C₄)-haloalkyl or         (C₁-C₄)-alkoxy and     -   mB is 1 or 2,     -   e.g. those in which     -   R_(B) ¹=cyclopropyl, R_(B) ²=hydrogen and (R_(B) ³)=2-OMe         (“Cyprosulfamide”) (S-16),     -   R_(B) ¹=cyclopropyl, R_(B) ²=hydrogen and (R_(B) ³)=5-C₁₋₂-OMe         (S-17),     -   R_(B) ¹=ethyl, R_(B) ²=hydrogen and (R_(B) ³)=2-OMe (S-18),     -   R_(B) ¹=isopropyl, R_(B) ²=hydrogen and (R_(B) ³)=5-C₁₋₂-OMe         (S-19) and     -   R_(B) ¹=isopropyl, R_(B) ²=hydrogen and (R_(B) ³)=2-OMe (S-20);

-   S4c) compounds from the class of the benzoylsulfamoylphenylureas of     the formula (S4c), as described in EP-A-365 484

-   -   in which     -   R_(c) ¹, R_(c) ² independently of one another are hydrogen,         (C₁-C₈)-alkyl, (C₃-C₈)-cycloalkyl, (C₃-C₆)-alkenyl,         (C₃-C₆)-alkynyl,     -   R_(c) ³ is halogen, (C₁-C₄)-alkyl, (C₁-C₄)-alkoxy, CF₃     -   mC is 1 or 2;     -   for example

-   1-[4-(N-2-methoxybenzoylsulfamoyl)phenyl]-3-methylurea (S-21),

-   1-[4-(N-2-methoxybenzoylsulfamoyl)phenyl]-3,3-dimethylurea (S-22),

-   1-[4-(N-4,5-dimethylbenzoylsulfamoyl)phenyl]-3-methylurea (S-23);

-   S5) compounds from the class of the hydroxyaromatics and of the     aromatic-aliphatic carboxylic acid derivatives (S5), e.g.

-   ethyl 3,4,5-triacetoxybenzoate (S-24),     3,5-dimethoxy-4-hydroxybenzoic acid (S-25), 3,5-dihydroxybenzoic     acid (S-26), 4-hydroxysalicylic acid (S-27), 4-fluorosalicylic acid     (S-28), 2-hydroxycinnamic acid (S-29), 2,4-dichloro-cinnamic acid     (S-30), as described in WO 2004/084631, WO 2005/015994 and WO     2005/016001;

-   S6) compounds from the class of the 1,2-dihydroquinoxalin-2-ones     (S6), e.g. 1-methyl-3-(2-thienyl)-1,2-dihydroquinoxalin-2-one     (S-31), 1-methyl-3-(2-thienyl)-1,2-dihydroquinoxaline-2-thione     (S-32), 1-(2-aminoethyl)-3-(2-thienyl)-1,2-dihydroquinoxalin-2-one     hydrochloride (S-33),     1-(2-methylsulfonylamino-ethyl)-3-(2-thienyl)-1,2-dihydroquinoxalin-2-one     (S-34), as described in WO 2005/112630;

-   S7) compounds from the class of the diphenylmethoxyacetic acid     derivatives (S7), e.g. methyl diphenylmethoxyacetate (CAS Reg. No.     41858-19-9) (S-35), ethyl diphenylmethoxyacetate (S-36) or     diphenylmethoxyacetic acid (S-37), as described in WO 98/38856;

-   S8) compounds of the formula (S8), as described in WO 98/27049

-   -   in which the symbols and indices have the following meanings:     -   R_(D) ¹ is halogen, (C₁-C₄)-alkyl, (C₁-C₄)-haloalkyl,         (C₁-C₄)-alkoxy, (C₁-C₄)-haloalkoxy,     -   R_(D) ² is hydrogen or (C₁-C₄)-alkyl,     -   R_(D) ³ is hydrogen, (C₁-C₈)-alkyl, (C₂-C₄)-alkenyl,         (C₂-C₄)-alkynyl, or aryl, where each of the aforementioned         C-containing radicals is unsubstituted or substituted by one or         more, preferably up to three, identical or different radicals         from the group consisting of halogen and alkoxy; or salts         thereof     -   nD is 0, 1 or 2;

-   S9) compounds from the class of the     3-(5-tetrazolylcarbonyl)-2-quinolones (S9), e.g.     1,2-dihydro-4-hydroxy-1-ethyl-3-(5-tetrazolylcarbonyl)-2-quinolone     (CAS number: 219479-18-2) (S-38),     1,2-dihydro-4-hydroxy-1-methyl-3-(5-tetrazolyl-carbonyl)-2-quinolone     (CAS number: 95855-00-8) (S-39), as described in WO 1999/000020;

-   S10) compounds of the formulae (S10a) or (S10b)     -   as described in WO 2007/023719 and WO 2007/023764

-   -   in which     -   R_(E) ¹ is halogen, (C₁-C₄)-alkyl, methoxy, nitro, cyano, CF₃,         OCF₃     -   Y_(E), Z_(E) independently of one another are O or S,     -   nE is an integer from 0 to 4,     -   R_(E) ² is (C₁-C₁₆)-alkyl, (C₂-C₆)-alkenyl, (C₃-C₆)-cycloalkyl,         aryl; benzyl, halobenzyl,     -   R_(E) ³ is hydrogen or (C₁-C₆)-alkyl;

-   S11) compounds from the class of the isothiochromanones (S11), such     as, for example, methyl     [(3-oxo-1H-2-benzothiopyran-4(3H)-ylidene)methoxy]acetate (CAS Reg.     No. 205121-04-6) (S-40) and related compounds from WO 1998/13361;

-   S12) one or more compounds from the group (S12):     -   “CL 304415” (CAS Reg. No. 31541-57-8)         (4-carboxy-3,4-dihydro-2H-1-benzopyran-4-acetic acid) (S-41)         from American Cyanamid, which is known as safener for corn         against imidazolinone damage,     -   “MG-838” (CAS Reg. No. 133993-74-5) (2-propenyl         1-oxa-4-azaspiro-[4.5]decane-4-carbodithioate) (S-42) from         Nitrokemia,     -   “disulfoton” (0,0-diethyl S-2-ethylthioethyl phosphorodithioate)         (S-43),     -   “dietholate” (0,0-diethyl O-phenylphosphorothioate) (S-44),     -   “mephenate” (4-chlorophenyl methylcarbamate) (S-45).

The cited documents contain detailed information relating to preparation processes and starting materials and name preferred compounds. Reference is expressly made to these documents; they form part of this description by way of citation.

Preference is given to herbicide/safener combinations comprising (A) a herbicidally effective amount of one or more compounds of the formula (I) or salts thereof, and (B) an antidotically effective amount of one or more safeners.

Within the context of the invention, herbicidally effective amount means an amount of one or more herbicides which is suitable for adversely affecting plant growth. Antidotically effective amount within the context of the invention means an amount of one or more safeners which is suitable for reducing the phytotoxic effect of crop protection composition active ingredients (e.g. of herbicides) on crop plants.

Examples of preferred combinations of herbicidal active ingredients (A) and safeners (B) are shown in the table below:

(I-1)+(S-1); (I-1)+(S-2); (I-1)+(S-3); (I-1)+(S-4); (I-1)+(S-5); (I-1)+(S-6); (I-1)+(S-7); (I-1)+(S-8); (I-1)+(S-9); (I-1)+(S-10); (I-1)+(S-11); (I-1)+(S-12); (I-1)+(S-13); (I-1)+(S-14); (I-1)+(S-15); (I-1)+(S-16); (I-1)+(S-17); (I-1)+(S-18); (I-1)+(S-19); (I-1)+(S-20); (I-1)+(S-21); (I-1)+(S-22); (I-1)+(S-23); (I-1)+(S-24); (I-1)+(S-25); (I-1)+(S-26); (I-1)+(S-27); (I-1)+(S-28); (I-1)+(S-29); (I-1)+(S-30); (I-1)+(S-31); (I-1)+(S-32); (I-1)+(S-33); (I-1)+(S-34); (I-1)+(S-35); (I-1)+(S-36); (I-1)+(S-37); (I-1)+(S-38); (I-1)+(S-39); (I-1)+(S-40); (I-1)+(S-41); (I-1)+(S-42); (I-1)+(S-43); (I-1)+(S-44); (I-1)+(S-45) (I-2)+(S-1); (I-2)+(S-2); (I-2)+(S-3); (I-2)+(S-4); (I-2)+(S-5); (I-2)+(S-6); (I-2)+(S-7); (I-2)+(S-8); (I-2)+(S-9); (I-2)+(S-10); (I-2)+(S-11); (I-2)+(S-12); (I-2)+(S-13); (I-2)+(S-14); (I-2)+(S-15); (I-2)+(S-16); (I-2)+(S-17); (I-2)+(S-18); (I-2)+(S-19); (I-2)+(S-20); (I-2)+(S-21); (I-2)+(S-22); (I-2)+(S-23); (I-2)+(S-24); (I-2)+(S-25); (I-2)+(S-26); (I-2)+(S-27); (I-2)+(S-28); (I-2)+(S-29); (I-2)+(S-30); (I-2)+(S-31); (I-2)+(S-32); (I-2)+(S-33); (I-2)+(S-34); (I-2)+(S-35); (I-2)+(S-36); (I-2)+(S-37); (I-2)+(S-38); (I-2)+(S-39); (I-2)+(S-40); (I-2)+(S-41); (I-2)+(S-42); (I-2)+(S-43); (I-2)+(S-44); (I-2)+(S-45) (I-3)+(S-1); (I-3)+(S-2); (I-3)+(S-3); (I-3)+(S-4); (I-3)+(S-5); (I-3)+(S-6); (−3)+(S-7); (I-3)+(S-8); (I-3)+(S-9); (I-3)+(S-10); (I-3)+(S-11); (I-3)+(S-12); (I-3)+(S-13); (I-3)+(S-14); (I-3)+(S-15); (I-3)+(S-16); (I-3)+(S-17); (I-3)+(S-18); (I-3)+(S-19); (I-3)+(S-20); (I-3)+(S-21); (I-3)+(S-22); (I-3)+(S-23); (I-3)+(S-24); (I-3)+(S-25); (I-3)+(S-26); (I-3)+(S-27); (I-3)+(S-28); (I-3)+(S-29); (I-3)+(S-30); (I-3)+(S-31); (I-3)+(S-32); (I-3)+(S-33); (I-3)+(S-34); (I-3)+(S-35); (I-3)+(S-36); (I-3)+(S-37); (I-3)+(S-38); (I-3)+(S-39); (I-3)+(S-40); (I-3)+(S-41); (I-3)+(S-42); (I-3)+(S-43); (I-3)+(S-44); (I-3)+(S-45) (I-4)+(S-1); (I-4)+(S-2); (I-4)+(S-3); (I-4)+(S-4); (I-4)+(S-5); (I-4)+(S-6); (I-4)+(S-7); (I-4)+(S-8); (I-4)+(S-9); (I-4)+(S-10); (I-4)+(S-11); (I-4)+(S-12); (I-4)+(S-13); (I-4)+(S-14); (I-4)+(S-15); (I-4)+(S-16); (I-4)+(S-17); (I-4)+(S-18); (I-4)+(S-19); (I-4)+(S-20); (I-4)+(S-21); (I-4)+(S-22); (I-4)+(S-23); (I-4)+(S-24); (I-4)+(S-25); (I-4)+(S-26); (I-4)+(S-27); (I-4)+(S-28); (I-4)+(S-29); (I-4)+(S-30); (I-4)+(S-31); (I-4)+(S-32); (I-4)+(S-33); (I-4)+(S-34); (I-4)+(S-35); (I-4)+(S-36); (I-4)+(S-37); (I-4)+(S-38); (I-4)+(S-39); (I-4)+(S-40); (I-4)+(S-41); (I-4)+(S-42); (I-4)+(S-43); (I-4)+(S-44); (I-4)+(S-45) (I-5)+(S-1); (I-5)+(S-2); (I-5)+(S-3); (I-5)+(S-4); (I-5)+(S-5); (I-5)+(S-6); (I-5)+(S-7); (I-5)+(S-8); (I-5)+(S-9); (I-5)+(S-10); (I-5)+(S-11); (I-5)+(S-12); (I-5)+(S-13); (I-5)+(S-14); (I-5)+(S-15); (I-5)+(S-16); (I-5)+(S-17); (I-5)+(S-18); (I-5)+(S-19); (I-5)+(S-20); (I-5)+(S-21); (I-5)+(S-22); (I-5)+(S-23); (I-5)+(S-24); (I-5)+(S-25); (I-5)+(S-26); (I-5)+(S-27); (I-5)+(S-28); (I-5)+(S-29); (I-5)+(S-30); (I-5)+(S-31); (I-5)+(S-32); (I-5)+(S-33); (I-5)+(S-34); (I-5)+(S-35); (I-5)+(S-36); (I-5)+(S-37); (I-5)+(S-38); (I-5)+(S-39); (I-5)+(S-40); (I-5)+(S-41); (I-5)+(S-42); (I-5)+(S-43); (I-5)+(S-44); (I-5)+(S-45) (I-6)+(S-1); (I-6)+(S-2); (I-6)+(S-3); (I-6)+(S-4); (I-6)+(S-5); (I-6)+(S-6); (I-6)+(S-7); (I-6)+(S-8); (I-6)+(S-9); (I-6)+(S-10); (I-6)+(S-11); (I-6)+(S-12); (I-6)+(S-13); (I-6)+(S-14); (I-6)+(S-15); (I-6)+(S-16); (I-6)+(S-17); (I-6)+(S-18); (I-6)+(S-19); (I-6)+(S-20); (I-6)+(S-21); (I-6)+(S-22); (I-6)+(S-23); (I-6)+(S-24); (I-6)+(S-25); (I-6)+(S-26); (I-6)+(S-27); (I-6)+(S-28); (I-6)+(S-29); (I-6)+(S-30); (I-6)+(S-31); (I-6)+(S-32); (I-6)+(S-33); (I-6)+(S-34); (I-6)+(S-35); (I-6)+(S-36); (I-6)+(S-37); (I-6)+(S-38); (I-6)+(S-39); (I-6)+(S-40); (I-6)+(S-41); (I-6)+(S-42); (I-6)+(S-43); (I-6)+(S-44); (I-6)+(S-45) (I-7)+(S-1); (I-7)+(S-2); (I-7)+(S-3); (I-7)+(S-4); (I-7)+(S-5); (I-7)+(S-6); (I-7)+(S-7); (I-7)+(S-8); (I-7)+(S-9); (I-7)+(S-10); (I-7)+(S-11); (I-7)+(S-12); (I-7)+(S-13); (I-7)+(S-14); (I-7)+(S-15); (I-7)+(S-16); (I-7)+(S-17); (I-7)+(S-18); (I-7)+(S-19); (I-7)+(S-20); (I-7)+(S-21); (I-7)+(S-22); (I-7)+(S-23); (I-7)+(S-24); (I-7)+(S-25); (I-7)+(S-26); (I-7)+(S-27); (I-7)+(S-28); (I-7)+(S-29); (I-7)+(S-30); (I-7)+(S-31); (I-7)+(S-32); (I-7)+(S-33); (I-7)+(S-34); (I-7)+(S-35); (I-7)+(S-36); (I-7)+(S-37); (I-7)+(S-38); (I-7)+(S-39); (I-7)+(S-40); (I-7)+(S-41); (I-7)+(S-42); (I-7)+(S-43); (I-7)+(S-44); (I-7)+(S-45) (I-8)+(S-1); (I-8)+(S-2); (I-8)+(S-3); (I-8)+(S-4); (I-8)+(S-5); (I-8)+(S-6); (I-8)+(S-7); (I-8)+(S-8); (I-8)+(S-9); (I-8)+(S-10); (I-8)+(S-11); (I-8)+(S-12); (I-8)+(S-13); (I-8)+(S-14); (I-8)+(S-15); (I-8)+(S-16); (I-8)+(S-17); (I-8)+(S-18); (I-8)+(S-19); (I-8)+(S-20); (I-8)+(S-21); (I-8)+(S-22); (I-8)+(S-23); (I-8)+(S-24); (I-8)+(S-25); (I-8)+(S-26); (I-8)+(S-27); (I-8)+(S-28); (I-8)+(S-29); (I-8)+(S-30); (I-8)+(S-31); (I-8)+(S-32); (I-8)+(S-33); (I-8)+(S-34); (I-8)+(S-35); (I-8)+(S-36); (I-8)+(S-37); (I-8)+(S-38); (I-8)+(S-39); (I-8)+(S-40); (I-8)+(S-41); (I-8)+(S-42); (I-8)+(S-43); (I-8)+(S-44); (I-8)+(S-45) (I-9)+(S-1); (I-9)+(S-2); (I-9)+(S-3); (I-9)+(S-4); (I-9)+(S-5); (I-9)+(S-6); (I-9)+(S-7); (I-9)+(S-8); (I-9)+(S-9); (I-9)+(S-10); (I-9)+(S-11); (I-9)+(S-12); (I-9)+(S-13); (I-9)+(S-14); (I-9)+(S-15); (I-9)+(S-16); (I-9)+(S-17); (I-9)+(S-18); (I-9)+(S-19); (I-9)+(S-20); (I-9)+(S-21); (I-9)+(S-22); (I-9)+(S-23); (I-9)+(S-24); (I-9)+(S-25); (I-9)+(S-26); (I-9)+(S-27); (I-9)+(S-28); (I-9)+(S-29); (I-9)+(S-30); (I-9)+(S-31); (I-9)+(S-32); (I-9)+(S-33); (I-9)+(S-34); (I-9)+(S-35); (I-9)+(S-36); (I-9)+(S-37); (I-9)+(S-38); (I-9)+(S-39); (I-9)+(S-40); (I-9)+(S-41); (I-9)+(S-42); (I-9)+(S-43); (I-9)+(S-44); (I-9)+(S-45) (I-10)+(S-1); (I-10)+(S-2); (I-10)+(S-3); (I-10)+(S-4); (I-10)+(S-5); (I-10)+(S-6); (I-10)+(S-7); (I-10)+(S-8); (I-10)+(S-9); (I-10)+(S-10); (I-10)+(S-11); (I-10)+(S-12); (I-10)+(S-13); (I-10)+(S-14); (I-10)+(S-15); (I-10)+(S-16); (I-10)+(S-17); (I-10)+(S-18); (I-10)+(S-19); (I-10)+(S-20); (I-10)+(S-21); (I-10)+(S-22); (I-10)+(S-23); (I-10)+(S-24); (I-10)+(S-25); (I-10)+(S-26); (I-10)+(S-27); (I-10)+(S-28); (I-10)+(S-29); (I-10)+(S-30); (I-10)+(S-31); (I-10)+(S-32); (I-10)+(S-33); (I-10)+(S-34); (I-10)+(S-35); (I-10)+(S-36); (I-10)+(S-37); (I-10)+(S-38); (I-10)+(S-39); (I-10)+(S-40); (I-10)+(S-41); (I-10)+(S-42); (I-10)+(S-43); (I-10)+(S-44); (I-10)+(S-45) (I-11)+(S-1); (I-11)+(S-2); (I-11)+(S-3); (I-11)+(S-4); (I-11)+(S-5); (I-11)+(S-6); (I-11)+(S-7); (I-11)+(S-8); (I-11)+(S-9); (I-11)+(S-10); (I-11)+(S-11); (I-11)+(S-12); (I-11)+(S-13); (I-11)+(S-14); (I-11)+(S-15); (I-11)+(S-16); (−11)+(S-17); (I-11)+(S-18); (I-11)+(S-19); (I-11)+(S-20); (I-11)+(S-21); (I-11)+(S-22); (I-11)+(S-23); (I-11)+(S-24); (I-11)+(S-25); (I-11)+(S-26); (I-11)+(S-27); (I-11)+(S-28); (I-11)+(S-29); (I-11)+(S-30); (I-11)+(S-31); (I-11)+(S-32); (I-11)+(S-33); (I-11)+(S-34); (I-11)+(S-35); (I-11)+(S-36); (I-11)+(S-37); (I-11)+(S-38); (I-11)+(S-39); (I-11)+(S-40); (I-11)+(S-41); (I-11)+(S-42); (I-11)+(S-43); (I-11)+(S-44); (I-11)+(S-45) (I-12)+(S-1); (I-12)+(S-2); (I-12)+(S-3); (I-12)+(S-4); (I-12)+(S-5); (I-12)+(S-6); (I-12)+(S-7); (I-12)+(S-8); (I-12)+(S-9); (I-12)+(S-10); 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(I-193)+(S-38); (I-193)+(S-39); (I-193)+(S-40); (I-193)+(S-41); (I-193)+(S-42); (I-193)+(S-43); (I-193)+(S-44); (I-193)+(S-45) (I-194)+(S-1); (I-194)+(S-2); (I-194)+(S-3); (I-194)+(S-4); (I-194)+(S-5); (I-194)+(S-6); (I-194)+(S-7); (I-194)+(S-8); (I-194)+(S-9); (I-194)+(S-10); (I-194)+(S-11); (I-194)+(S-12); (I-194)+(S-13); (I-194)+(S-14); (I-194)+(S-15); (I-194)+(S-16); (I-194)+(S-17); (I-194)+(S-18); (I-194)+(S-19); (I-194)+(S-20); (I-194)+(S-21); (I-194)+(S-22); (I-194)+(S-23); (I-194)+(S-24); (I-194)+(S-25); (I-194)+(S-26); (I-194)+(S-27); (I-194)+(S-28); (I-194)+(S-29); (I-194)+(S-30); (I-194)+(S-31); (I-194)+(S-32); (I-194)+(S-33); (I-194)+(S-34); (I-194)+(S-35); (I-194)+(S-36); (I-194)+(S-37); (I-194)+(S-38); (I-194)+(S-39); (I-194)+(S-40); (I-194)+(S-41); (I-194)+(S-42); (I-194)+(S-43); (I-194)+(S-44); (I-194)+(S-45) (I-195)+(S-1); (I-195)+(S-2); (I-195)+(S-3); (I-195)+(S-4); (I-195)+(S-5); (I-195)+(S-6); (I-195)+(S-7); (I-195)+(S-8); (I-195)+(S-9); (I-195)+(S-10); (I-195)+(S-11); (I-195)+(S-12); (I-195)+(S-13); (I-195)+(S-14); (I-195)+(S-15); (I-195)+(S-16); (I-195)+(S-17); (I-195)+(S-18); (I-195)+(S-19); (I-195)+(S-20); (I-195)+(S-21); (I-195)+(S-22); (I-195)+(S-23); (I-195)+(S-24); (I-195)+(S-25); (I-195)+(S-26); (I-195)+(S-27); (I-195)+(S-28); (I-195)+(S-29); (I-195)+(S-30); (I-195)+(S-31); (I-195)+(S-32); (I-195)+(S-33); (I-195)+(S-34); (I-195)+(S-35); (I-195)+(S-36); (I-195)+(S-37); (I-195)+(S-38); (I-195)+(S-39); (I-195)+(S-40); (I-195)+(S-41); (I-195)+(S-42); (I-195)+(S-43); (I-195)+(S-44); (I-195)+(S-45) (I-196)+(S-1); (I-196)+(S-2); (I-196)+(S-3); (I-196)+(S-4); (I-196)+(S-5); (I-196)+(S-6); (I-196)+(S-7); (I-196)+(S-8); (I-196)+(S-9); (I-196)+(S-10); (I-196)+(S-11); (I-196)+(S-12); (I-196)+(S-13); (I-196)+(S-14); (I-196)+(S-15); (I-196)+(S-16); (I-196)+(S-17); (I-196)+(S-18); (I-196)+(S-19); (I-196)+(S-20); (I-196)+(S-21); (I-196)+(S-22); (I-196)+(S-23); (I-196)+(S-24); (I-196)+(S-25); (I-196)+(S-26); (I-196)+(S-27); (I-196)+(S-28); (I-196)+(S-29); (I-196)+(S-30); (I-196)+(S-31); (I-196)+(S-32); (I-196)+(S-33); (I-196)+(S-34); (I-196)+(S-35); (I-196)+(S-36); (I-196)+(S-37); (I-196)+(S-38); (I-196)+(S-39); (I-196)+(S-40); (I-196)+(S-41); (I-196)+(S-42); (I-196)+(S-43); (I-196)+(S-44); (I-196)+(S-45) (I-197)+(S-1); (I-197)+(S-2); (I-197)+(S-3); (I-197)+(S-4); (I-197)+(S-5); (I-197)+(S-6); (I-197)+(S-7); (I-197)+(S-8); (I-197)+(S-9); (I-197)+(S-10); (I-197)+(S-11); (I-197)+(S-12); (I-197)+(S-13); (I-197)+(S-14); (I-197)+(S-15); (I-197)+(S-16); (I-197)+(S-17); (I-197)+(S-18); (I-197)+(S-19); (I-197)+(S-20); (I-197)+(S-21); (I-197)+(S-22); (I-197)+(S-23); (I-197)+(S-24); (I-197)+(S-25); (I-197)+(S-26); (I-197)+(S-27); (I-197)+(S-28); (I-197)+(S-29); (I-197)+(S-30); (I-197)+(S-31); (I-197)+(S-32); (I-197)+(S-33); (I-197)+(S-34); (I-197)+(S-35); (I-197)+(S-36); (I-197)+(S-37); (I-197)+(S-38); (I-197)+(S-39); (I-197)+(S-40); (I-197)+(S-41); (I-197)+(S-42); (I-197)+(S-43); (I-197)+(S-44); (I-197)+(S-45) (I-198)+(S-1); (I-198)+(S-2); (I-198)+(S-3); (I-198)+(S-4); (I-198)+(S-5); (I-198)+(S-6); (I-198)+(S-7); (I-198)+(S-8); (I-198)+(S-9); (I-198)+(S-10); (I-198)+(S-11); (I-198)+(S-12); (I-198)+(S-13); (I-198)+(S-14); (I-198)+(S-15); (I-198)+(S-16); (I-198)+(S-17); (I-198)+(S-18); (I-198)+(S-19); (I-198)+(S-20); (I-198)+(S-21); (I-198)+(S-22); (I-198)+(S-23); (I-198)+(S-24); (I-198)+(S-25); (I-198)+(S-26); (I-198)+(S-27); (I-198)+(S-28); (I-198)+(S-29); (I-198)+(S-30); (I-198)+(S-31); (I-198)+(S-32); (I-198)+(S-33); (I-198)+(S-34); (I-198)+(S-35); (I-198)+(S-36); (I-198)+(S-37); (I-198)+(S-38); (I-198)+(S-39); (I-198)+(S-40); (I-198)+(S-41); (I-198)+(S-42); (I-198)+(S-43); (I-198)+(S-44); (I-198)+(S-45)

Particular preference is given to combinations of the compounds of the formula (I) with the safener “cyprosulfamide” (S-16).

Combinations of the compounds (I-1), (I-2), (I-3), (I-163) and (I-164) with the safener cyprosulfamide (S-16) are particularly emphasized.

The safeners (B) are suitable for reducing phytotoxic effects which may occur when herbicides of the formula (I) are used in crops of useful plants without substantially impairing the effectiveness of these herbicidal active ingredients against harmful plants. As a result, it is possible to extend quite considerably the field of use of conventional crop protection compositions, for example to crops in which it has hitherto only been possible to use the herbicides to a limited extent, if at all.

Depending on indication and herbicidal active ingredient used, the required application rates of the safeners can vary within wide limits and are generally in the range from 0.001 to 5 kg, preferably 0.005 to 2.5 kg of active ingredient per hectare.

The herbicidal active ingredients of the formula (I) (A) and the safeners (B) can be applied together (e.g. as a ready mix or in the tank mix method) or sequentially in any desired order, for example by atomizing, pouring or spraying, or by scattering granules. The weight ratio of herbicide of the formula (I) (A): safener (B) can vary within wide limits and is preferably in the range from 1:10 000 to 10 000:1, in particular from 1:1000 to 1000:1. The optimum amounts in each case of the formula (I) (A) and safener (B) are dependent on the type of herbicide used and the type of safener used and also on the nature and the development stage of the plant stock to be treated and can be determined from case to case by simple routine preliminary experiments.

Depending on their properties, the safeners (B) contained in the herbicide/safener combination according to the invention can be used for pretreating the seed material of the crop plant (for example for seed dressing) or be introduced into the seed furrows prior to sowing or be used together with the herbicide before or after the emergence of the plants. Pre-emergence treatment includes not only the treatment of the area under cultivation (including, if appropriate, water present on the area under cultivation, for example in the case of rice applications) before sowing, but also the treatment of the sown areas under cultivation which do not yet sustain any growth. Joint application with the herbicide is preferred. For this purpose, it is possible to use tank mixes or ready mixes.

In a preferred embodiment, the seed material (e.g. grains, seeds or vegetative propagation organs, such as tubers or shoot parts with buds) or seedlings are pretreated with the safeners (B), if appropriate in combination with other agrochemical active ingredients. For the pretreatment of the seed material, the active ingredients can be applied to the seed material, for example, by dressing, or the active ingredients and the seed material can be introduced into water or other solvents, and the active ingredients are taken up, for example, by adduct formation or diffusion in a dip process or by swelling or pregermination. For the pretreatment of seedlings, the young plants can be brought into contact with the safeners, if appropriate in combination with other agrochemical active ingredients, for example by spraying, dipping or pouring, and then be transplanted and, if appropriate, be subjected to a post-treatment with the herbicides (A).

The treatment of the seed material or seedlings can be carried out using the safeners (B) alone or together with other agrochemical active ingredients—such as fungicides, insecticides or agents for fortifying the plant, for fertilizing or for increasing the rate of the swelling and germination processes. Here, the safeners may, after the pretreatment application, be applied again before, after or together with one or more herbicides of the formula (I), possibly also in combination with other known herbicides. By pretreating the seed material or the seedlings, it is possible to achieve an improved long-term effect of the safeners.

Accordingly, the present invention further provides a method for controlling undesired plants in plant crops, which method comprises applying the components (A) and (B) of the herbicide/safener combination according to the invention to the plants (for example harmful plants, such as mono- or dicotyledonous weeds or undesired crop plants), the seed material (e.g. grains, seeds or vegetative propagation organs, such as tubers or shoot parts with buds) or the area on which the plants grow (e.g. the area under cultivation), for example together or separately. Here, it is possible to apply one or more safeners (B), preferably one or more, in particular one, compounds of groups S1) to S12) before, after or at the same time as the herbicide(s) of the formula (I) (A) to the plants, the seed material or the area on which the plants grow (for example the area under cultivation). In a preferred embodiment, the safeners (B) are used for treating the seed material.

Undesired plants are to be understood as meaning all plants which grow where they are not wanted. These may be, for example, harmful plants (for example monocotyledonous or dicotyledonous weeds or undesired crop plants), including, for example, those which are resistant to certain herbicidal active ingredients, such as glyphosate, atrazine, glufosinate or imidazolinone herbicides.

Monocotyledonous weeds originate, for example, from the genera Echinochloa, Setaria, Panicum, Digitaria, Phleum, Poa, Festuca, Eleusine, Brachiaria, Lolium, Bromus, Avena, Cyperus, Sorghum, Agropyron, Cynodon, Monochoria, Fimbristylis, Sagittaria, Eleocharis, Scirpus, Paspalum, Ischaemum, Sphenoclea, Dactyloctenium, Agrostis, Alopecurus, Apera. Dicotyledonous weeds originate, for example, from the genera Sinapis, Lepidium, Galium, Stellaria, Matricaria, Anthemis, Galinsoga, Chenopodium, Urtica, Senecio, Amaranthus, Portulaca, Xanthium, Convolvulus, Ipomoea, Polygonum, Sesbania, Ambrosia, Cirsium, Carduus, Sonchus, Solanum, Rorippa, Rotala, Lindernia, Lamium, Veronica, Abutilon, Emex, Datura, Viola, Galeopsis, Papaver, Centaurea, Trifolium, Ranunculus, Taraxacum, Euphorbia.

In the method according to the invention, preferably an effective amount of components (A) and (B) is used for controlling harmful plants in plant crops, for example in economically important arable crops, for example monocotyledonous arable crops such as cereals (for example wheat, barley, rye, oats), rice, corn, millet, or dicotyledonous arable crops such as sugar beet, rapeseed, cotton, sunflowers and leguminous plants, for example of the genera Glycine (for example Glycine max., such as non-transgenic Glycine max. (for example conventional cultivars, such as STS cultivars) or transgenic Glycine max. (for example RR-soybean or LL-soybean) and hybrids thereof), Phaseolus, Pisum, Vicia and Arachis, or vegetable crops of various botanical groups, such as potato, leek, cabbage, carrot, tomato, onion, and also permanent crops and plantation crops, such as pip and stone fruit, berry fruit, grapevine, Hevea, bananas, sugar cane, coffee, tea, citrus fruits, nut plantations, lawns, palm crops and forest plantations.

The invention also provides the use of the herbicide/safener combinations according to the invention for controlling undesired plant growth, preferably in plant crops.

The herbicide/safener combinations according to the invention can be prepared by known processes, for example as mix formulations of the individual components, if appropriate with further active ingredients, additives and/or customary formulation auxiliaries, which are then applied in a customary manner diluted with water, or they can be prepared as tank mixes by jointly diluting the individual components, formulated separately or partially formulated separately, with water. It is likewise possible to apply the individual components, formulated separately or partially formulated separately, at different times (splitting). It is also possible to apply the individual components or the herbicide/safener combinations in several portions (sequential application), for example pre-emergence applications, followed by post-emergence applications or early post-emergence applications, followed by medium or late post-emergence applications. Preference is given here to the joint or almost simultaneous application of the active ingredients of the combination in question.

The herbicide/safener combination according to the invention can also be used for controlling harmful plants in crops of known or still developing genetically modified plants.

The transgenic plants are usually characterized by particularly advantageous properties, for example by resistances to certain pesticides, primarily certain herbicides, resistances to plant diseases or pathogens of plant diseases such as certain insects or microorganisms such as fungi, bacteria or viruses. Other particular properties relate, for example, to the harvest material with regard to amount, quality, storability, composition and special ingredients. For example, transgenic plants with increased starch content or modified quality of the starch or those with a different fatty acid composition of the harvest material are known. Further particular properties may lie in a tolerance or resistance to abiotic stressors, for example heat, cold, dryness, salt and ultraviolet radiation.

Preferably, the application of the herbicide/safener combinations according to the invention, or salts thereof, is in economically important transgenic crops of useful plants and ornamental plants, e.g. of cereals such as wheat, barley, rye, oats, millet, rice, manioc and corn or else crops of sugar beet, cotton, soybean, rape seed, potato, tomato, peas and other vegetable varieties.

Preferably, the herbicide/safener combinations according to the invention can be used in crops of useful plants which are resistant or have been rendered resistant by genetic means to the phytotoxic effects of the herbicides.

Conventional methods for producing new plants which have modified properties compared to existing plants consist, for example, in classical cultivation methods and the production of mutants. Alternatively, new plants with modified properties can be produced using genetic engineering methods (see e.g. EP-A-0221044, EP-A-0131624). For example, in several cases the following have been described:

-   -   genetic modifications of crop plants for the purpose of         modifying the starch synthesized in the plants (e.g. WO         92/11376, WO 92/14827, WO 91/19806),     -   transgenic crop plants which are resistant to certain herbicides         of the glufosinate type (cf. e.g. EP-A-0242236, EP-A-242246) or         glyphosate type (WO 92/00377) or the sulfonylurea type         (EP-A-0257993, U.S. Pat. No. 5,013,659),     -   transgenic crop plants, for example cotton, with the ability to         produce Bacillus thuringiensis toxins (Bt toxins) which make the         plants resistant to certain pests (EP-A-0142924, EP-A-0193259),     -   transgenic crop plants with a modified fatty acid composition         (WO 91/13972),     -   genetically modified crop plants with new ingredients or         secondary substances, for example new phytoalexins, which bring         about an increased disease resistance (EPA 309862, EPA0464461),     -   genetically modified plants with reduced photorespiration which         have higher yields and higher stress tolerance (EPA 0305398),     -   transgenic crop plants which produce pharmaceutically or         diagnostically important proteins (“molecular pharming”),     -   transgenic crop plants which are characterized by higher yields         or better quality,     -   transgenic crop plants which are characterized by a combination         e.g. of the aforementioned new properties (“gene stacking”).

Numerous molecular-biological techniques by means of which novel transgenic plants with modified properties can be produced are known in principle; see, for example, I. Potrykus and G. Spangenberg (eds.) Gene Transfer to Plants, Springer Lab Manual (1995), Springer Verlag Berlin, Heidelberg, or Christou, “Trends in Plant Science” 1 (1996) 423-431.

For genetic manipulations of this type, nucleic acid molecules can be introduced into plasmids which permit a mutagenesis or a sequence modification through recombination of DNA sequences. With the help of standard methods it is possible, for example, to undertake base exchanges, remove part sequences or add natural or synthetic sequences. For joining the DNA fragments with one another, adapters or linkers can be attached to the fragments, see e.g. Sambrook et al., 1989, Molecular Cloning, A Laboratory Manual, 2nd edition, Cold Spring Harbor Laboratory Press, Cold Spring Harbor, N.Y.; or Winnacker “Gene and Klone [Genes and Clones]”, VCH Weinheim 2nd edition 1996.

The production of plant cells with reduced activity of a gene product can be achieved, for example, through the expression of at least one corresponding antisense-RNA, of a sense-RNA for achieving a cosuppression effect or the expression of at least one correspondingly constructed ribozyme which cleaves specifically transcripts of the aforementioned gene product.

For this, firstly DNA molecules can be used which include the entire coding sequence of a gene product including any flanking sequences present, and also DNA molecules which only include parts of the coding sequence, in which case it is necessary for these parts to be long enough to bring about an antisense effect in the cells. It is also possible to use DNA sequences which have a high degree of homology to the coding sequences of a gene product, but are not completely identical.

During the expression of nucleic acid molecules in plants, the synthesized protein can be localized in any desired compartment of the plant cell. However, in order to achieve localization in a specific compartment, the coding region can, for example, be linked to DNA sequences which ensure localization in a specific compartment. Sequences of this type are known to the person skilled in the art (see, for example, Braun et al., EMBO J. 11 (1992), 3219-3227; Wolter et al., Proc. Natl. Acad. Sci. USA 85 (1988), 846-850; Sonnewald et al., Plant J. 1 (1991), 95-106). The expression of the nucleic acid molecules can also take place in the organelles of the plant cells.

The transgenic plant cells can be regenerated by known techniques to give whole plants. The transgenic plants may in principle be plants of any desired plant species, i.e. both monocotyledonous and also dicotyledonous plants.

Thus, transgenic plants are obtainable which have modified properties through overexpression, suppression or inhibition of homologous (=natural) genes or gene sequences or expression of heterologous (=foreign) genes or gene sequences.

Preferably, the herbicide/safener combinations according to the invention can be used in transgenic crops which are resistant to growth regulators such as, for example, dicamba or to herbicides which inhibit essential plant enzymes, for example acetolactate synthases (ALS), EPSP synthases, glutamine synthases (GS) or hydroxyphenylpyruvate dioxygenases (HPPD), or to herbicides from the group of sulfonylureas, glyphosates, glufosinates or benzoylisoxazoles and analogous active ingredients.

When using the herbicide/safener combinations according to the invention in transgenic crops, besides the effects against harmful plants that are observed in other crops, effects often arise which are specific to the application in the particular transgenic crop, for example a modified or specifically expanded weed spectrum which can be controlled, modified application rates which can be used for the application, preferably good combinability with the herbicides against which the transgenic crop is resistant, and also influencing of growth and yield of the transgenic crop plants.

The invention therefore also provides the use of the herbicide/safener combinations according to the invention as herbicides for controlling harmful plants in transgenic crop plants.

Preferably, the use of the combinations according to the invention is in economically important transgenic crops of useful plants and ornamental plants, e.g. of cereals (e.g. wheat, barley, rye, oats), millet, rice, manioc and corn or else crops of sugar beet, cotton, soybean, rapeseed, potato, tomato, peas and other vegetable crops.

The invention therefore also provides the use of the herbicidally effective composition according to the invention for controlling harmful plants in transgenic crop plants or crop plants which are tolerant owing to selective cultivation.

The herbicides (A) and the safeners (B) can be converted jointly or separately into customary formulations, for example for application by atomization, pouring, spraying and seed dressing, such as solutions, emulsions, suspensions, powders, foams, pastes, granules, aerosols, natural and synthetic materials impregnated with active ingredient, and microencapsulations in polymeric substances. The formulations may comprise the customary auxiliaries and additives.

These formulations are produced in a known manner, for example by mixing the active ingredients with extenders, that is liquid solvents, liquefied gases under pressure, and/or solid carriers, optionally with the use of surface-active agents, that is emulsifiers and/or dispersants and/or foam formers.

If the extender used is water, it is also possible to use, for example, organic solvents as auxiliary solvents. Essentially, suitable liquid solvents are: aromatics such as xylene, toluene, or alkylnaphthalenes, chlorinated aromatics or chlorinated aliphatic hydrocarbons such as chlorobenzenes, chloroethylenes, or methylene chloride, aliphatic hydrocarbons such as cyclohexane or paraffins, e.g. mineral oil fractions, mineral and vegetable oils, alcohols, such as butanol or glycol and ethers and esters thereof, ketones, such as acetone, methyl ethyl ketone, methyl isobutyl ketone or cyclohexanone, strongly polar solvents such as dimethylformamide or dimethyl sulfoxide, and water.

Suitable solid carriers are: for example ammonium salts and ground natural minerals such as kaolins, clay earths, talc, chalk, quartz, attapulgite, montmorillonite or diatomaceous earth, and ground synthetic minerals such as highly-dispersed silica, alumina and silicates; suitable solid carriers for granules are: for example crushed and fractionated natural rocks such as calcite, marble, pumice, sepiolite and dolomite, and also synthetic granules of inorganic and organic meals, and granules of organic material such as sawdust, coconut shells, corn cobs and tobacco stalks; suitable emulsifiers and/or foam formers are: for example nonionogenic and anionic emulsifiers, such as polyoxyethylene fatty acid esters, polyoxyethylene fatty alcohol ethers, for example alkylaryl polyglycol ethers, alkylsulfonates, alkyl sulfates, arylsulfonates and protein hydrolyzates; suitable dispersants are: for example lignosulfite waste liquors and methylcellulose.

Tackifiers such as carboxymethylcellulose, natural and synthetic polymers in the form of powders, granules or latices, such as gum Arabic, polyvinyl alcohol and polyvinyl acetate, and also natural phospholipids, such as cephalins and lecithins, and synthetic phospholipids can be used in the formulations. Further additives may be mineral and vegetable oils.

Dyes such as inorganic pigments, for example iron oxide, titanium oxide, ferrocyan blue, and organic dyes such as alizarin dyes, azo dyes and metallophthalocyanine dyes and trace nutrients such as salts of iron, manganese, boron, copper, cobalt, molybdenum and zinc can be used.

The formulations comprise generally between 0.1 and 95% by weight of active ingredient, preferably between 0.5 and 90% by weight.

The herbicides (A) and the safeners (B) can be used as such or in their formulations also in a mixture with other agrochemical active ingredients, such as known herbicides, for controlling undesired plant growth, for example for controlling weeds or for controlling undesired crop plants, where, for example, ready mixes or tank mixes are possible.

Mixtures with other known active ingredients such as fungicides, insecticides, acaricides, nematicides, bird repellants, plant nutrients and soil structure improvers are also possible, likewise with additives and formulation auxiliaries customary in plant protection.

The herbicides (A) and the safeners (B) can be applied as such, in the form of their formulations and the application forms provided therefrom by further dilution, such as ready-to-use solutions, suspensions, emulsions, powders, pastes and granules. The application takes place in the customary manner, for example by pouring, spraying, atomizing, scattering.

The active ingredients can be applied to the plants, plant parts, the seed material or the area under cultivation (arable soil), preferably to the seed material or the green plants and plant parts and, if appropriate, additionally to the arable soil. One possible application is the joint application of the active ingredients in the form of tank mixes, where the optimally formulated concentrated formulations of the individual active ingredients are mixed together in the tank with water and the resulting spray liquor is applied.

A joint formulation of the combination according to the invention of active ingredients (A) and (B) has the advantage of easier application because the amounts of the components can already be adjusted in an optimal ratio relative to one another. Moreover, the auxiliaries in the formulation can be optimally matched to one another.

Combination partners which can be used for the herbicide/safener combination according to the invention in mixture formulations or in the tank mix are, for example, known, preferably herbicidal, active ingredients which are based on an inhibition of, for example, acetolactate synthase, acetyl-coenzyme-A-carboxylase, PS I, PS II, HPPD, phytoene desaturase, protoporphyrinogen oxidase, glutamine synthetase, cellulose biosynthesis, 5-enolpyruvylshikimate-3-phosphate synthetase. Such compounds and also other compounds that can be used, some of which have an unknown mechanism of action or a different mechanism of action, are described, for example, in Weed Research 26, 441-445 (1986), or in the handbook “The Pesticide Manual”, 12th edition 2000, or 13th edition 2003 or 14th edition 2006/2007, or in the corresponding “e-Pesticide Manual”, version 4.1 (2007-08), each published by the British Crop Protection Council (also referred to for short below as “PM”), and literature cited therein. Lists of “Common names” are also available in “The Compendium of Pesticide Common Names” on the internet. Herbicides known from the literature which can be combined with the mixtures according to the invention are, for example, the following active ingredients (note: the compounds are designated either with the “common name” in accordance with the International Organization for Standardization (ISO) or with the chemical name, optionally together with a customary code number, and always include all of the application forms such as acids, salts, esters and isomers such as stereoisomers and optical isomers. Here, one, and sometimes also more, application forms are specified): 2,4-D, acetochlor, acifluorfen, acifluorfen-sodium, aclonifen, alachlor, alloxydim, alloxydim-sodium, ametryn, amicarbazone, amidosulfuron, aminopyralid, amitrole, anilofos, asulam, atrazine, azafenidin, azimsulfuron, beflubutamid, benazolin, benazolin-ethyl, benfuresate, bensulfuron-methyl, bentazone, benzfendizone, benzobicyclon, benzofenap, bicyclopyrone, bifenox, bilanafos, bispyribac-scaium, bromacil, bromobutide, bromofenoxim, bromoxynil, butachlor, butafenacil, butenachlor, butralin, butroxydim, butylate, cafenstrole, carbetamide, carfentrazone-ethyl, chlomethoxyfen, chloridazon, chlorimuron-ethyl, chlornitrofen, chlorotoluron, chlorsulfuron, cinidon-ethyl, cinmethylin, cinosulfuron, clefoxydim, clethodim, Clodinafop-propargyl, clomazone, clomeprop, clopyralid, Cloransulam-methyl, cumyluron, cyanazine, cyclosulfamuron, cycloxydim, Cyhalofop-butyl, desmedipham, dicamba, dichlobenil, dichlorprop, Dichlorprop-P, Diclofop-methyl, diclosulam, difenzoquat, diflufenican, diflufenzopyr, Dikegulac-sodium, dimefuron, dimepiperate, dimethachlor, dimethametryn, dimethenamid, triaziflam, Diquat-dibromide, dithiopyr, diuron, dymron, EPTC, esprocarb, ethalfluralin, Ethametsulfuron-methyl, ethofumesate, ethoxyfen, ethoxysulfuron, etobenzanid, Fenoxaprop-ethyl, Fenoxaprop-P-ethyl, fenoxasulfone, fentrazamide, Flamprop-M-isopropyl, Flamprop-M-methyl, flazasulfuron, florasulam, fluazifop, Fluazifop-butyl, Fluazifop-P-butyl, fluazolate, Flucarbazone-sodium, flucetosulfuron, fluchloralin, flufenacet, flufenpyr, flumetsulam, Flumiclorac-pentyl, flumioxazin, fluometuron, fluorochloridone, Fluoroglycofen-ethyl, flupoxam, Flupyrsulfuron-methyl-sodium, fluridone, fluoroxypyr, Fluoroxypyr-butoxypropyl, Fluoroxypyr-meptyl, flurprimidol, flurtamone, Fluthiacet-methyl, fomesafen, foramsulfuron, glufosinate, Glufosinate-P, Glufosinate-ammonium, Glufosinate-P-ammonium, Glufosinate-P-sodium, glyphosate, Halosulfuron-methyl, haloxyfop, Haloxyfop-ethoxyethyl, Haloxyfop-methyl, Haloxyfop-P-methyl, hexazinone, Imazamethabenz-methyl, imazamox, imazapic, imazapyr, imazaquin, imazethapyr, imazosulfuron, indanofan, indaziflam, Iodosulfuron-methyl-sodium, ioxynil, isoproturon, isouron, isoxaben, isoxachlortole, isoxaflutole, ketospiradox, lactofen, lenacil, linuron, MCPA, mecoprop, Mecoprop-P, mefenacet, Mesosulfuron-methyl, mesotrione, metamifop, metamitron, metazachlor, metazosulfuron, methabenzthiazuron, methiozolin, methyldymron, metobromuron, metolachlor, metosulam, metoxuron, metribuzin, Metsulfuron-methyl, molinate, monolinuron, naproanilide, napropamide, neburon, nicosulfuron, norflurazon, orbencarb, oryzalin, oxadiargyl, oxadiazon, oxasulfuron, oxaziclomefone, oxyfluorfen, paraquat, pelargonic acid, pendimethalin, pendralin, penoxsulam, pentoxazone, pethoxamid, phenmedipham, picloram, picolinafen, pinoxaden, piperophos, pretilachlor, Primisulfuron-methyl, profluazol, profoxydim, prometryn, propachlor, propanil, propaquizafop, propisochlor, Propoxycarbazone-sodium, propyrisulfuron, propyzamide, prosulfocarb, prosulfuron, Pyraclonil, Pyraflufen-ethyl, pyrazolate, Pyrazosulfuron-ethyl, pyrazoxyfen, pyribenzoxim, pyributicarb, pyridafol, pyridate, pyriftalid, Pyriminobac-methyl, Pyrithiobac-sodium, quinclorac, quinmerac, quinoclamine, Quizalofop-ethyl, Quizalofop-P-ethyl, Quizalofop-P-tefuryl, rimsulfuron, saflufenacil, sethoxydim, simazine, simetryn, S-metolachlor, sulcotrione, sulfentrazone, Sulfometuron-methyl, sulfosate, sulfosulfuron, tebuthiuron, tepraloxydim, terbuthylazine, terbutryn, thenylchlor, thiazopyr, Thifensulfuron-methyl, thiobencarb, tiocarbazil, tralkoxydim, triallate, triasulfuron, Tribenuron-methyl, triclopyr, tridiphane, trifloxysulfuron, trifluralin, Triflusulfuron-methyl and tritosulfuron.

Further possible mixing partners are

pyroxasulfone, pyroxsulam, orthosulfamuron, pyrimisulfan, prohexadione-calcium, bencarbazone, SYN-523, IDH-100, SYP-249, monosulfuron, ipfencarbazone (HOK-201), pyribambenz-isopropyl, tefuryltrione, bencarbazone, tembotrione, pyrasulfotole, thiencarbazone-methyl, methyl 4-amino-3-chloro-6-(4-chloro-2-fluoro-3-methoxyphenyl)pyridine-2-carboxylate and 4-amino-3-chloro-6-(4-chloro-2-fluoro-3-methoxyphenyl)pyridine-2-carboxylic acid.

For use, the formulations, which are present in a commercially available form, are, if appropriate, diluted in the customary manner, for example in the case of wettable powders, emulsifiable concentrates, dispersions and water-dispersible granules, by means of water. Preparations in the form of dusts, soil granules, granules for scattering, and sprayable solutions are usually not diluted further with other inert substances prior to use.

Biological Examples: Post-Emergence Herbicidal Effect and Safener Effect

Seeds or rhizome pieces of mono- and dicotyledonous harmful plants and of crop plants are planted in peat pots in sandy loam, covered with earth and grown in a greenhouse under good growth conditions. Alternatively to this, harmful plants occurring in the paddy rice cultivation are cultivated in pots in which water comes to 2 cm above the soil surface. 10 to 20 days after sowing, the test plants are treated in the one-to three-leaf stage. The herbicide/safener active ingredient combinations according to the invention, formulated as water-soluble powders or suspensions, and, in parallel experiments, the correspondingly formulated individual active ingredients are sprayed onto the green plant parts in various dosages using an application rate of 300 I of water/ha (converted) and, after the test plants have remained in the greenhouse under optimum growth conditions for 2-3 weeks, the effect of the preparations is scored visually in comparison with untreated controls. In the case of rice or in the case of harmful plants which occur in the rice cultivation, the active ingredients are also placed directly into the irrigation water (application analogous to the so-called granules application) or sprayed onto plants and into the irrigation water.

Pre-Emergence Herbicidal Effect and Safener Effect

Seeds or rhizome pieces of mono- and dicotyledonous weed plants and crop plants are planted in peat pots in sandy loam and covered with earth. The herbicide/safener active ingredient combinations according to the invention, formulated as water-soluble powders or suspensions, and, in parallel experiments, the correspondingly formulated individual active ingredients were then applied to the surface of the covering earth at an application rate of 600 to 800 I of water/ha (converted) in a variety of dosages.

After the treatment, the pots were placed in the greenhouse and kept under good growth conditions for the weeds and the crop plants. Visual scoring of the plant damage or emergence damage was carried out after the test plants had emerged after a test period of 2 to 4 weeks, in comparison with untreated controls.

Treatment of Seed Material

Seed grains of crop plants were mixed in bottles with the safeners according to the invention, formulated as suspension concentrates or emulsion concentrates, and water and shaken well so that the seed grains were uniformly coated with the formulation of the particular safener. The seed grains and the emerged plants were then tested with herbicides in the pre-emergence or post-emergence method in accordance with the experiments according to examples 3.3 and 3.2, respectively.

Experimental Series I (Compound I-1):

Herbicide % effect Safener % effect dosage g (without dosage g (with According to the Administration Herbicide of (a.i./ha) safener) Safener (SA) of a.i./ha safener) % reduction invention/comparison Wheat (Triso) Pre-emergence I-1 25 30 Cyprosulfamide 50 0 100 According to the invention Pre-emergence I-1 25 30 Mefenpyr- 50 10 67 Comparison diethyl Pre-emergence I-1 25 30 Cloquintocet- 50 10 67 Comparison mexyl Pre-emergence I-1 25 30 Furilazole 50 20 33 Comparison Pre-emergence I-1 25 30 Fluxofenim 50 10 67 Comparison Pre-emergence I-1 25 30 Fenchlorazole 50 10 67 Comparison Post-emergence I-1 50 20 Mefenpyr- 100 10 50 Comparison diethyl Post-emergence I-1 50 20 Cloquintocet- 100 10 50 Comparison mexyl Corn (Aventura) Pre-emergence I-1 100 50 Cyprosulfamide 200 40 20 According to the invention Pre-emergence I-1 100 50 Furilazole 200 45 10 Comparison

Experimental Series II (Compound I-3):

Herbicide % effect Safener % effect dosage g (without dosage g (with According to the Administration Herbicide of (a.i./ha) safener) Safener (SA) of a.i./ha safener) % reduction invention/comparison Corn (Aventura) Pre-emergence I-3 50 25 Cyprosulfamide 100 10 60 According to the invention Post-emergence I-3 50 60 Cyprosulfamide 100 30 50 According to the invention Pre-emergence I-3 50 20 Mefenpyr- 100 10 50 Comparison diethyl Pre-emergence I-3 50 20 Isoxadifen- 100 15 25 Comparison ethyl Pre-emergence I-3 50 25 Cloquintocet- 100 20 20 Comparison mexyl Post-emergence I-3 50 60 Isoxadifen- 100 50 17 Comparison ethyl Rice (Ballila) Post-emergence I-3 25 60 Cyprosulfamide 50 30 50 According to the invention Post-emergence I-3 25 60 Isoxadifen- 50 50 17 Comparison ethyl Post-emergence I-3 25 60 Fluxofenim 50 40 33 Comparison

Experimental Series III (Compound I-109):

Herbicide % effect Safener % effect dosage g (without dosage g (with According to the Administration Herbicide of (a.i./ha) safener) Safener (SA) of a.i./ha safener) % reduction invention/comparison Wheat (Triso) Pre-emergence I-109 25 20 Cyprosulfamide 50 0 100 According to the invention Pre-emergence I-109 25 20 Cloquintocet- 50 10 50 Comparison mexyl Pre-emergence I-109 25 20 Benoxacor 50 10 50 Comparison Pre-emergence I-109 25 20 Furilazole 50 10 50 Comparison Post-emergence I-109 25 30 Fenchlorazole 50 20 33 Comparison Corn (Aventura) Pre-emergence I-109 25 20 Cyprosulfamide 50 10 50 According to the invention Post-emergence I-109 25 60 Cyprosulfamide 50 30 50 According to the invention Pre-emergence I-109 25 20 Fenchlorazole 50 15 25 Comparison Post-emergence I-109 25 60 Benoxacor 50 50 17 Comparison Post-emergence I-109 25 60 Fenchlorazole 50 50 17 Comparison

Experimental Series IV (Compound I-163):

Herbicide % effect Safener % effect dosage g (without dosage g (with According to the Administration Herbicide of (a.i./ha) safener) Safener (SA) of a.i./ha safener) % reduction invention/comparison Wheat (Triso) Pre-emergence I-163 50 20 Cyprosulfamide 100 0 100 According to the invention Post-emergence I-163 25 10 Cyprosulfamide 50 0 100 According to the invention Pre-emergence I-163 50 20 Isoxadifen- 100 10 50 Comparison ethyl Pre-emergence I-163 50 20 Benoxacor 100 10 50 Comparison Pre-emergence I-163 50 20 Furilazole 100 10 50 Comparison Corn (Aventura) Pre-emergence I-163 50 50 Cyprosulfamide 100 30 40 According to the invention Post-emergence I-163 25 20 Cyprosulfamide 50 0 100 According to the invention Pre-emergence I-163 50 50 Isoxadifen- 100 40 20 Comparison ethyl Pre-emergence I-163 50 50 Cloquintocet- 100 40 20 Comparison mexyl Pre-emergence I-163 50 50 Benoxacor 100 40 20 Comparison Post-emergence I-163 25 20 Isoxadifen- 50 10 50 Comparison ethyl Post-emergence I-163 25 20 Benoxacor 50 10 50 Comparison Post-emergence I-163 25 20 Fenchlorazole 50 10 50 Comparison

Experimental Series IV (Compound I-164):

Herbicide % effect Safener % effect dosage g (without dosage g (with According to the Administration Herbicide of (a.i./ha) safener) Safener (SA) of a.i./ha safener) % reduction invention/comparison Wheat (Triso) Pre-emergence I-164 25 10 Cyprosulfamide 50 0 100 According to the invention Post-emergence I-164 25 20 Cyprosulfamide 50 0 100 According to the invention Post-emergence I-164 25 20 Cloquintocet- 50 10 50 Comparison mexyl Post-emergence I-164 25 20 Benoxacor 50 10 50 Comparison Post-emergence I-164 25 20 Furilazole 50 10 50 Comparison Rice (Ballila) Post-emergence I-164 25 10 Cyprosulfamide 50 0 100 According to the invention Post-emergence I-164 25 20 Mefenpyr- 50 10 50 Comparison diethyl Post-emergence I-164 25 20 Cloquintocet- 50 10 50 Comparison mexyl Post-emergence I-164 50 20 Benoxacor 100 10 50 Comparison Post-emergence I-164 25 20 Furilazole 50 10 50 Comparison 

1. A composition comprising (A) one or more compounds of the formula (I), their N-oxides or their salts,

R¹ is cyclopropyl, 4-Br-phenyl or 4-Cl-phenyl; X is chlorine or bromine; and R² is hydrogen, C₁-C₁₄-alkyl, C₂-C₁₄-alkoxyalkyl, C₃-C₁₄-alkoxyalkoxyalkyl, C₂-C₁₄-hydroxyalkyl or benzyl; and (B) at least one compound selected from the group consisting of S4) compounds from the class of the acylsulfonamides; S1) compounds from the group of the following heterocyclic carboxylic acid derivatives: S1a) derivatives of dichlorophenylpyrazolemonocarboxylic acid, S1b) derivatives of 1,5-diphenylpyrazole-3-carboxylic acid, S2) compounds from the group of the following 8-quinolinyloxy derivatives: S2a) compounds of the (5-chloro-8-quinolinoxy)malonic acid type, S3) the following active ingredients of the dichloroacetamide type “R-29148” (3-dichloroacetyl-2,2,5-trimethyl-1,3-oxazolidine), “R-28725” (3-dichloroacetyl-2,2-dimethyl-1,3-oxazolidine), “PPG-1292” (N-allyl-N-[(1,3-dioxolan-2-yl)methyl]dichloroacetamide), “DKA-24” (N-allyl-N-[(allylaminocarbonyl)methyl]dichloroacetamide), “AD-67” or “MON 4660” (3-dichloroacetyl-1-oxa-3-azaspiro[4.5]-decane), “TI-35” (1-dichloroacetylazepane), “diclonon” (dicyclonone) (synonym: “BAS145138” or “LAB145138”) (RS)-1-dichloroacetyl-3,3,8a-trimethylperhydropyrrolo[1,2-a]pyrimidin-6-one, S5) active ingredients from the class of the hydroxyaromatics and of the aromatic-aliphatic carboxylic acid derivatives, S6) active ingredients from the class of the 1,2-dihydroquinoxalin-2-ones, S7) compounds from the class of the diphenylmethoxyacetic acid derivatives, S8) compounds of the formula (S8)

 in which the symbols and indices have the following meanings: R_(D) ¹ is halogen, (C₁-C₄)-alkyl, (C₁-C₄)-haloalkyl, (C₁-C₄)-alkoxy, (C₁-C₄)-haloalkoxy, R_(D) ² is hydrogen or (C₁-C₄)-alkyl, R_(D) ³ is hydrogen, (C₁-C₈)-alkyl, (C₂-C₄)-alkenyl, (C₂-C₄)-alkynyl, or aryl, where each of the aforementioned C-containing radicals is unsubstituted or substituted by one or more identical or different radicals from the group consisting of halogen and alkoxy; or salts thereof nD is an integer from 0 to 2, S9) active ingredients from the class of the 3-(5-tetrazolylcarbonyl)-2-quinolones, S10) compounds of the formulae (S10a) or (S10b)

in which R_(E) ¹ is halogen, (C₁-C₄)-alkyl, methoxy, nitro, cyano, CF₃, OCF₃ Y_(E), Z_(E) independently of one another are O or S, nE is an integer from 0 to 4, R_(E) ² is (C₁-C₁₆)-alkyl, (C₂-C₆)-alkenyl, (C₃-C₆)-cycloalkyl, aryl; benzyl, halobenzyl, R_(E) ³ is hydrogen or (C₁-C₆)-alkyl, S11) active ingredients from the class of the isothiochromanones, S12) one or more compounds from the group: “CL 304415” (CAS Reg. No. 31541-57-8) (4-carboxy-3,4-dihydro-2H-1-benzopyran-4-acetic acid), “MG-838” (CAS Reg. No. 133993-74-5) (2-propenyl 1-oxa-4-azaspiro[4.5]decane-4-carbodithioate), “disulfoton” (O,O-diethyl S-2-ethylthioethyl phosphorodithioate), “dietholate” (O,O-diethyl O-phenylphosphorothioate), “mephenate” (4-chlorophenyl methylcarbamate).
 2. The composition as claimed in claim 1, wherein, in the compound of the formula (I), R² is hydrogen; C₁-C₈-alkyl; C₂-C₈-alkoxyalkyl; C₃-C₈-alkoxyalkoxyalkyl, or C₂-C₈-hydroxyalkyl.
 3. The composition as claimed in claim 1, wherein, in the compound of the formula (I), R² is hydrogen or C₁-C₂-alkyl.
 4. The composition as claimed in claim 1, wherein, in the compound of the formula (I), R² is C₅-C₈-alkyl, C₅-C₈-alkoxyalkyl, C₅-C₈-alkoxyalkoxyalkyl or C₅-C₈-hydroxyalkyl.
 5. The composition as claimed in claim 1, wherein the compound of the formula (I) is selected from the group consisting of 6-amino-5-chloro-2-cyclopropyl-4-pyrimidinecarboxylic acid; methyl 6-amino-5-chloro-2-cyclopropyl-4-pyrimidinecarboxylate; ethyl 6-amino-5-chloro-2-cyclopropyl-4-pyrimidinecarboxylate; 6-amino-5-bromo-2-cyclopropyl-4-pyrimidinecarboxylic acid; methyl 6-amino-5-bromo-2-cyclopropyl-4-pyrimidinecarboxylate; ethyl 6-amino-5-bromo-2-cyclopropyl-4-pyrimidinecarboxylate; 6-amino-5-chloro-2-(4-chlorophenyl)-4-pyrimidinecarboxylic acid; methyl 6-amino-5-chloro-2-(4-chlorophenyl)-4-pyrimidinecarboxylate; ethyl 6-amino-5-chloro-2-(4-chlorophenyl)-4-pyrimidinecarboxylate; phenylmethyl 6-amino-5-bromo-2-cyclopropyl-4-pyrimidinecarboxylate; 6-amino-5-bromo-2-cyclopropyl-4-pyrimidinecarboxylic acid sodium salt; phenylmethyl 6-amino-5-chloro-2-cyclopropyl-4-pyrimidinecarboxylate; 6-amino-5-chloro-2-cyclopropyl-4-pyrimidinecarboxylic acid sodium salt; ethyl 6-amino-2-(4-bromophenyl)-5-chloro-4-pyrimidinecarboxylate; methyl 6-amino-2-(4-bromophenyl)-5-chloro-4-pyrimidinecarboxylate; 6-amino-2-(4-bromophenyl)-5-chloro-4-pyrimidinecarboxylic acid; 1-methylethyl 6-amino-5-chloro-2-cyclopropyl-4-pyrimidinecarboxylate; n-butyl 6-amino-5-chloro-2-cyclopropyl-4-pyrimidinecarboxylate; 3-hydroxypropyl 6-amino-5-chloro-2-cyclopropyl-4-pyrimidinecarboxylate; n-propyl 6-amino-5-chloro-2-cyclopropyl-4-pyrimidinecarboxylate; 1-methylheptyl 6-amino-5-chloro-2-cyclopropyl-4-pyrimidinecarboxylate; 2-(2-methoxyethoxy)ethyl 6-amino-5-chloro-2-cyclopropyl-4-pyrimidinecarboxylate; n-octyl 6-amino-5-chloro-2-cyclopropyl-4-pyrimidinecarboxylate; 2-butoxyethyl 6-amino-5-chloro-2-cyclopropyl-4-pyrimidinecarboxylate; 2-ethylhexyl 6-amino-5-chloro-2-cyclopropyl-4-pyrimidinecarboxylate; potassium salt of 6-amino-5-chloro-2-cyclopropyl-4-pyrimidinecarboxylic acid; and 2-butoxy-1-methylethyl 6-amino-5-chloro-2-cyclopropyl-4-pyrimidine-carboxylate.
 6. The composition as claimed in claim 1, which comprises, as compound of the formula (I), 6-amino-5-chloro-2-cyclopropyl-4-pyrimidinecarboxylic acid or its sodium salt, potassium salt or methyl ester and, as safener (B), cyprosulfamide.
 7. A method for controlling undesired plants, in which the compound of the formula (I) and at least one compound from group (B) as claimed in claim 1 are applied together or separately.
 8. The method as claimed in claim 7, wherein the plant crops originate from the group of arable crops, vegetable crops or permanent crops and plantation crops.
 9. The method as claimed in claim 8, wherein the plant crops are transgenic or are tolerant owing to selective cultivation. 